Virtual Compton Scattering on the Proton Below Pion Threshold

Virtual Compton Scattering on the Proton Below Pion Threshold PDF Author: Paul S. Bourgeois
Publisher:
ISBN:
Category : Compton effect
Languages : en
Pages : 404

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Virtual Compton Scattering on the Proton Below Pion Threshold

Virtual Compton Scattering on the Proton Below Pion Threshold PDF Author: Paul S. Bourgeois
Publisher:
ISBN:
Category : Compton effect
Languages : en
Pages : 404

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Compton Scattering from the Proton Below Pion Threshold

Compton Scattering from the Proton Below Pion Threshold PDF Author: Bruce Everett MacGibbon
Publisher:
ISBN:
Category :
Languages : en
Pages : 296

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The Compton scattering cross section on the proton was measured at laboratory angles of 90$spcirc$ and 135$spcirc$, using 70-100 MeV tagged photons, and simultaneously using 100-150 MeV untagged photons, in order to determine the electric and magnetic polarizabilities. The 135$spcirc$ cross section is sensitive to the difference of the electric and magnetic polarizabilities, $bar alpha - barbeta$, while the 90$spcirc$ cross section is sensitive to the electric polarizability $bar alpha$. Using the model independent sum rule constraint for $bar alpha$ + $bar beta$ and a model dependent dispersion relation calculation, the values for the polarizabilities extracted from the cross sections are:$$bar alpha = (12.5 pm 0.6 pm 0.8 pm 0.6) times 10sp{-4} fmsp3cr bar beta = (1.8 mp 0.6 mp 0.8 mp 0.6) times 10sp{-4} fmsp3$$where the errors shown are statistical, systematic, and model, respectively.

Measurement of Virtual Compton Scattering Below Pion Threshold at Invariant Four-momentum Transfer Squared Q2

Measurement of Virtual Compton Scattering Below Pion Threshold at Invariant Four-momentum Transfer Squared Q2 PDF Author: Christophe Jutier
Publisher:
ISBN:
Category : Electrons, Compton
Languages : en
Pages : 458

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Measurement of the Generalized Polarizabilities of the Proton in Virtual Compton Scattering at Q2

Measurement of the Generalized Polarizabilities of the Proton in Virtual Compton Scattering at Q2 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Virtual Compton Scattering is studied at the Thomas Jefferson National Accelerator Facility in the energy domain below pion threshold and in the Delta(1232) resonance region. The data analysis is based on the Dispersion Relation (DR) approach. The electric and magnetic Generalized Polarizabilities (GPs) of the proton and the structure functions Pll-Ptt/epsilon and Plt are determined at four-momentum transfer squared Q2=0.92 and 1.76 GeV2. The DR analysis is consistent with the low-energy expansion analysis. The world data set indicates that neither the electric nor magnetic GP follows a simple dipole form.

Virtual Compton Scattering

Virtual Compton Scattering PDF Author: L. Van Hoorebeke
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Virtual Compton Scattering o013 the proton has been studied at Q 2 -values of 1:0 and 1:9 (GeV=c) 2 in Hall A at the Thomas Je013erson National Accelerator Facility (JLab). Data were taken below and above the pion production threshold as well as in the resonance region. Results obtained below pion threshold at Q 2 = 1:0 (GeV=c) 2 are presented in this paper.

Measurement of the Generalized Polarizabilities of the Proton in Virtual Scattering at Q2

Measurement of the Generalized Polarizabilities of the Proton in Virtual Scattering at Q2 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
Virtual Compton Scattering is studied at the Thomas Jefferson National Accelerator Facility at low Center-of-Mass energies, below pion threshold. Following the Low Energy Theorem for the ep --> ep gamma process, we obtain values for the two structure functions Pll-Ptt/epsilon and Plt at four-momentum transfer squared Q2=0.92 and 1.76 GeV2.

Virtual Compton Scattering

Virtual Compton Scattering PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
The Virtual Compton Scattering process off the proton has been studied at Q2-values of 1.0 and 1.9 (GeV/c)2 using the Hall A facilities of JLab. Data were taken below and above the pion production threshold as well as in the resonance region. Preliminary results, especially in relation with the Generalised Polarisabilities, will be presented.

The Virtual Compton Scattering at TJNAF.

The Virtual Compton Scattering at TJNAF. PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
The Virtual Compton Scattering is a powerful tool to probe the internal structure of the proton. A VCS experiment (E93050) was performed in Hall A at JLAB below and above the pion threshold. In the resonance region, cross sections of pion and photon electroproduction have been produced; below the pion threshold, evidence of the effect of the polarisabilities on the cross sections has been proved.

Virtual Compton Scattering and Neutral Pion Electro-production from the Proton in the Nucleon Resonance Region

Virtual Compton Scattering and Neutral Pion Electro-production from the Proton in the Nucleon Resonance Region PDF Author: Luminita Todor
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
The experiment (E93-050) at Jefferson Lab measured the ep {yields} ep{gamma} and ep {yields} ep{pi}{sup 0} cross sections in the nucleon resonance region, from the threshold to W = 1.9 GeV at Q{sup 2} = 1 GeV{sup 2} for backward emission of the {gamma} or {pi}{sup 0}.

Nstar 2001 - Proceedings Of The Workshop On The Physics Of Excited Nucleons

Nstar 2001 - Proceedings Of The Workshop On The Physics Of Excited Nucleons PDF Author: Dieter Drechsel
Publisher: World Scientific
ISBN: 9814490040
Category : Baryons
Languages : en
Pages : 528

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Book Description
The study of N∗s can provide us with critical insights into the nature of QCD in the confinement domain. The keys to progress in this domain are the identification of its important degrees of freedom and the effective forces between them. The nucleon is the simplest system in which the nonabelian character of QCD is manifest. There are Nc quarks in a baryon because there are Nc colors, and as a consequence Gell-Mann and Zweig were forced to introduce the quarks in order to describe the octet and decuplet baryons.This volume gives a status report on the recent experimental and theoretical results in the field of nucleon resonance physics. A wealth of new high precision data was presented from facilities around the world, such as BES, BNL, ELSA, GRAAL, JLab, MAMI, MIT/Bates, SPring8, and Yerevan. Particular emphasis was laid on polarization degrees of freedom and large acceptance detectors as precision tools for studying small but important transition amplitudes, and the helicity (spin) structure of the nucleon. There were new results describing the nucleon resonance structure on the basis of quantum chromodynamics, either directly in terms of quarks and gluons by means of lattice gauge theory, or in terms of hadrons in the framework of chiral field theories. A status report on duality showed the surprising connections between the physics of the low energy nucleon resonance region and the realm of quark structure functions in deep inelastic scattering. Finally, this volume contains a summary report of the BRAG workshop, devoted to the analysis of baryon resonances.